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Increases in Cell-Wall Homogalacturonan but Decreases in Xylogalacturonan Accompany Transition from Dormant to Vegetative Stages in Chrysolaena Obovata Rhizophores: Article No. 125086

  • Marina Camara Mattos Martins
  • , Fernanda dos Santos Kretzschmar
  • , Nicholas Carpita
  • , Adriana Hissai Hayashi
  • , Maria Angela Machado de Carvalho
  • , Breno Leite
  • , Marcia Regina Braga
  • Instituto de Botanica
  • State University of Campinas

Research output: Contribution to journalArticlepeer-review

Abstract

The rhizophores of Chrysolaena obovata, a perennial herb native to the Brazilian Cerrado, are underground storage organs that accumulate fructans and support vegetative propagation. Here, we investigated how the content of fructans and the composition of rhizophore cell wall polysaccharides change across developmental stages and contribute to seasonal adaptation. In addition to the accumulation of fructans in vacuoles (~26-55% of the dry mass according to the developmental stage), cell-wall polysaccharide composition changed throughout the growth cycle, reflecting structural adjustments linked to developmental and environmental cues. These cell walls have a type I architecture, typical of eudicots. Although total pectin content remained stable, homogalacturonans increased in proportion during the transition from dormant to vegetative stages, whereas amounts of xylogalacturonans decreased. Xylogalacturonans accumulate within the middle lamella during the dormant phase and are potentially associated with flexibility and water retention. Hemicelluloses consisted mainly of low-substituted arabinoxylans and xyloglucan, consistent with a secondary cell wall profile. Xylans decreased slightly in the transition from the dormant to vegetative stage, while xyloglucan proportions increased. Overall, our findings show that seasonal metabolic changes in C. obovata involve dynamic modifications of rhizophore cell wall polysaccharides, which contribute to organ development and drought adaptation throughout the seasonal cycle.
Original languageAmerican English
Number of pages11
JournalCarbohydrate Polymers
Volume380
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/JA-2800-97147

Keywords

  • Asteraceae
  • cell-wall polysaccharides
  • Cerrado
  • fructan
  • rhizophores

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